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Touschek lifetime studies and optimi...
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Carmignani, Nicola.
Touschek lifetime studies and optimization of the European synchrotron radiation facilitypresent and upgrade lattice /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Touschek lifetime studies and optimization of the European synchrotron radiation facilityby Nicola Carmignani.
Reminder of title:
present and upgrade lattice /
Author:
Carmignani, Nicola.
Published:
Cham :Springer International Publishing :2016.
Description:
x, 102 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Synchrotrons.
Online resource:
http://dx.doi.org/10.1007/978-3-319-25798-3
ISBN:
9783319257983$q(electronic bk.)
Touschek lifetime studies and optimization of the European synchrotron radiation facilitypresent and upgrade lattice /
Carmignani, Nicola.
Touschek lifetime studies and optimization of the European synchrotron radiation facility
present and upgrade lattice /[electronic resource] :by Nicola Carmignani. - Cham :Springer International Publishing :2016. - x, 102 p. :ill., digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
Introduction -- The European Synchrotron Radiation Facility -- Touschek Effect in Electron Storage Rings -- Touschek Lifetime Parameter Measurements -- Lifetime Measurements -- Optimization and Testing of Alternate Sextupole Setting -- Bunch Lengthening and Intrabeam Scattering for the ESRF Low Emittance Upgrade Lattice -- Touschek Lifetime for the New Lattice -- Conclusions.
This thesis describes the experimental and theoretical basics of free electron laser science, serving as an excellent introduction for newcomers to this young field. Beyond that, it addresses electron-beam lifetimes in third-generation synchrotron light sources, in particular with a view to optimizing them in the forthcoming ESRF upgrade. The lifetime of the electron beam in a storage ring is a measure of how fast electrons are being lost, and is thus an essential parameter determining the required injection frequency, which in turn affects beam stability and power consumption. The main limitation on the beam lifetime in these synchrotron light sources is the Touschek effect, i.e. the single scattering between two electrons in a bunch. In this thesis a model able to predict the Touschek lifetime is presented. The model is successfully tested against measurements and used to study the influence of other parameters such as current and size of vacuum chamber. Not least, it enables the settings of sextupole magnets to be optimized.
ISBN: 9783319257983$q(electronic bk.)
Standard No.: 10.1007/978-3-319-25798-3doiSubjects--Corporate Names:
739338
European Synchrotron Radiation Facility.
Subjects--Topical Terms:
710970
Synchrotrons.
LC Class. No.: QC787.S9
Dewey Class. No.: 539.735
Touschek lifetime studies and optimization of the European synchrotron radiation facilitypresent and upgrade lattice /
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Introduction -- The European Synchrotron Radiation Facility -- Touschek Effect in Electron Storage Rings -- Touschek Lifetime Parameter Measurements -- Lifetime Measurements -- Optimization and Testing of Alternate Sextupole Setting -- Bunch Lengthening and Intrabeam Scattering for the ESRF Low Emittance Upgrade Lattice -- Touschek Lifetime for the New Lattice -- Conclusions.
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This thesis describes the experimental and theoretical basics of free electron laser science, serving as an excellent introduction for newcomers to this young field. Beyond that, it addresses electron-beam lifetimes in third-generation synchrotron light sources, in particular with a view to optimizing them in the forthcoming ESRF upgrade. The lifetime of the electron beam in a storage ring is a measure of how fast electrons are being lost, and is thus an essential parameter determining the required injection frequency, which in turn affects beam stability and power consumption. The main limitation on the beam lifetime in these synchrotron light sources is the Touschek effect, i.e. the single scattering between two electrons in a bunch. In this thesis a model able to predict the Touschek lifetime is presented. The model is successfully tested against measurements and used to study the influence of other parameters such as current and size of vacuum chamber. Not least, it enables the settings of sextupole magnets to be optimized.
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Physics and Astronomy (Springer-11651)
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http://dx.doi.org/10.1007/978-3-319-25798-3
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